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Expression patterns of GmAP2/EREB-Like transcription factors involved in soybean responses to water deficit.

机译:GmAP2 / EREB样转录因子的表达模式参与了大豆对缺水的反应。

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摘要

Soybean farming has faced several losses in productivity due to drought events in the last few decades. However, plants have molecular mechanisms to prevent and protect against water deficit injuries, and transcription factors play an important role in triggering different defense mechanisms. Understanding the expression patterns of transcription factors in response to water deficit and to environmental diurnal changes is very important for unveiling water deficit stress tolerance mechanisms. Here, we analyzed the expression patterns of ten APETALA2/Ethylene Responsive Element Binding-like (AP2/ EREB-like) transcription factors in two soybean genotypes (BR16: drought-sensitive; and Embrapa 48: drought-tolerant). According to phylogenetic and domain analyses, these genes can be included in the DREB and ERF subfamilies. We also analyzed a GmDRIP-like gene that encodes a DREB negative regulator. We detected the up-regulation of 9 GmAP2/EREB-like genes and identified transcriptional differences that were dependent on the levels of the stress applied and the tissue type analyzed (the expression of the GmDREB1F-like gene, for example, was four times higher in roots than in leaves). The GmDRIP-like gene was not induced by water deficit in BR16 during the longest periods of stress, but was significantly induced in Embrapa 48; this suggests a possible genetic/molecular difference between the responses of these cultivars to water deficit stress. Additionally, RNAseq gene expression analysis over a 24-h time course indicates that the expression patterns of several GmDREB-like genes are subject to oscillation over the course of the day, indicating a possible circadian regulation.
机译:在过去的几十年中,由于干旱事件,大豆种植面临生产力的若干损失。然而,植物具有预防和防止水分亏缺伤害的分子机制,转录因子在触发不同防御机制中起着重要作用。理解响应缺水和环境日变化的转录因子的表达模式对于揭示缺水胁迫耐受机制非常重要。在这里,我们分析了两种大豆基因型(BR16:干旱敏感; Embrapa 48:干旱)中十种APETALA2 /乙烯反应元件结合样(AP2 / EREB样)转录因子的表达模式。根据系统发育和域分析,这些基因可包含在DREB和ERF亚家族中。我们还分析了编码DREB负调节剂的GmDRIP样基因。我们检测到9个GmAP2 / EREB样基因的上调并发现了转录差异,该差异取决于所施加的压力水平和所分析的组织类型(例如,GmDREB1F样基因的表达高四倍)根比叶)。 GmDRIP样基因不是在最长的胁迫时间内被BR16的水分缺乏诱导的,而在Embrapa 48中被显着诱导的。这表明这些品种对缺水胁迫的反应之间可能存在遗传/分子差异。另外,在24小时的时间过程中进行RNAseq基因表达分析表明,数个GmDREB样基因的表达模式在一天当中会发生振荡,这表明可能存在昼夜节律调节。

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